Title :
New DC rail side soft-switching PWM DC-DC converter with voltage doubler rectifier for PV generation interface
Author :
Sayed, Khairy ; Soon-Kurl Kwon ; Nishida, Keisuke ; Nakaoka, Mutsuo
Author_Institution :
Sohag Univ., Sohag, Egypt
Abstract :
This paper presents a new circuit topology of active edge resonant snubbers assisted half-bridge soft switching PWM inverter type high power dc-dc converter for photovoltaic applications. The proposed step-up DC/DC converters with transformer isolation can obtain high voltage step-up trough turns ratio. The proposed dc-dc power converter is composed of typical voltage source-fed half-bridge high frequency PWM inverter with a high frequency transformer link in addition to input DC busline side power semiconductor switching devices for PWM control scheme and parallel capacitive lossless snubbers. The operating principle of the new DC-DC converter treated here is described by using switching mode equivalent circuits, together with its unique features. All the active power switches in the half-bridge arms and input DC buslines can achieve ZCS turn-on and ZVS turn-off commutation transitions. The total turn-off switching losses of the power switches can be significantly reduced. As a result, a high switching frequency IGBTs can be actually selected in the frequency range of 60 kHz under principle of soft switching.
Keywords :
DC-DC power convertors; PWM invertors; PWM power convertors; PWM rectifiers; bridge circuits; equivalent circuits; high-frequency transformers; insulated gate bipolar transistors; network topology; power semiconductor switches; snubbers; solar cells; zero current switching; zero voltage switching; DC busline side power semiconductor switching devices; DC rail side soft-switching PWM DC-DC converter; PV generation interface; PWM control scheme; ZCS turn-on commutation transitions; ZVS turn-off commutation transitions; active edge resonant snubbers; active power switches; circuit topology; half-bridge arms; half-bridge soft switching PWM inverter; high frequency transformer link; high power dc-dc converter; high switching frequency IGBT; high voltage step-up trough turns ratio; parallel capacitive lossless snubbers; photovoltaic applications; switching losses; switching mode equivalent circuits; transformer isolation; voltage doubler rectifier; voltage source-fed half-bridge high frequency PWM inverter; Frequency conversion; Inverters; Pulse width modulation; Soft switching; Switches; Zero current switching; Zero voltage switching; DC-DC power converter; active edge resonant snubbers; dc rail; high frequency transformer link; soft switching PWM; solar PV;
Conference_Titel :
Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE-ASIA), 2014 International
Conference_Location :
Hiroshima
DOI :
10.1109/IPEC.2014.6869919